US7910474B2

Method of manufacturing a semiconductor device

Summary by NHIP

Layered silicon carbon barrier film

The method manufactures a semiconductor device by depositing a layered barrier film between a damascene interconnection and an overlying interlayer insulating film. A low-carbon film with an infrared I2/I1 ratio of 0.004 to 0.0067 sits adjacent to the interconnection, while a high-carbon film with a larger ratio sits adjacent to the insulating film.

Claim Score by NHIP

Read claim 3, the broadest

Abstract

An object of the present invention is to provide a semiconductor device which comprises a barrier film having a high etching selection ratio of the interlayer insulating film thereto, a good preventive function against the Cu diffusion, a low dielectric constant and excellent adhesiveness to the Cu interconnection and a manufacturing method thereof. The barrier film (for instance, a second barrier film 6) disposed between the interconnection or the via plug and its overlying interlayer insulating film is made to have a layered structure made of a plurality of films containing silicon and carbon (preferably, silicon, carbon and nitrogen), with different carbon contents, and, in particular, a low-carbon-concentration film 6a with a small carbon content is set to be a lower layer therein and a high-carbon-concentration film 6b with a large carbon content is set to be an upper layer therein, whereby the effectual prevention against the Cu diffusion, a high etching selection ratio and good adhesiveness to the Cu interconnection can be certainly provided by the presence of the low-carbon-concentration film 6a, while the overall dielectric constant can be well reduced by the presence of the high-carbon-concentration film 6b.

US7910474B2, drawing sheet 1
Sheet 1 of 13

Term

Term ended

Expired 23 October 2024, 1.9 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

12 claims: 4 independent, 8 dependent

  1. 1
    A method of manufacturing a semiconductor device comprising:disposing a barrier film made of a plurality of layered films containing silicon and carbon, with different carbon contents, between an interconnection or a via plug and its overlying layer that is an interlayer insulating film, wherein the interconnection or the via plug is formed by a damascene method, and wherein a low-carbon-concentration film with a small carbon content is formed on the side of said interconnection or said via plug, and thereafter a high-carbon-concentration film with a carbon content larger than that of said low-carbon-concentration film is formed on the side of said interlayer insulating film.
  2. 3
    Broadest claimClaim Score 78, broad(NHIP)A method of manufacturing a semiconductor device comprising:disposing a barrier film made of a plurality of layered films containing silicon, carbon and nitrogen, with different carbon contents, between an interconnection or a via plug and its overlying layer that is an interlayer insulating film, wherein the interconnection or the via plug is formed by a damascene method.
  3. 6
    A method of manufacturing a semiconductor device comprising:forming, on a substrate in which an interconnection or a via plug is formed, a barrier film wherein, at least, a low-carbon-concentration film containing silicon, carbon and nitrogen, with a small carbon content, and a high-carbon-concentration film containing silicon, carbon and nitrogen, with a carbon content larger than that of said low-carbon-concentration film, are laid in this order;forming, on said barrier film, an interlayer insulating film, main constituent elements of which are silicon, carbon and oxygen;performing dry etching, while using a resist pattern formed on said interlayer insulating film as a mask and said low-carbon-concentration film as an etching stopper, and thereby removing said interlayer insulating film and said high-carbon-concentration film;removing said resist pattern by means of ashing with an oxygen-containing gas;removing said low-carbon-concentration film by etch back to form a via hole or an interconnection trench;and filling up said via hole or said interconnection trench with a barrier metal and an interconnection material, and thereby forming a via plug or an interconnection.
  4. 8
    A method of manufacturing a semiconductor device, which comprises at least the steps of:forming, on a substrate in which a first interconnection is formed, a first barrier film wherein, at least, a low-carbon-concentration film containing silicon, carbon and nitrogen, with a small carbon content, and a high-carbon-concentration film containing silicon, carbon and nitrogen, with a carbon content larger than that of said low-carbon concentration film, are laid in this order;forming, on said first barrier film, a first interlayer insulating film, a second barrier film and a second interlayer insulating film, main constituent elements of any of which are silicon, carbon and oxygen;performing dry etching, while using a first resist pattern formed on said second interlayer insulating film as a mask and said low-carbon-concentration film as an etching stopper, and thereby removing said second interlayer insulating film, said second barrier film, said first interlayer insulating film and said high-carbon-concentration film;removing said first resist pattern by means of ashing with an oxygen-containing gas;performing dry etching, while using a second resist pattern formed on said second interlayer insulating film as a mask and said second barrier film as an etching stopper, and thereby removing said second interlayer insulating film;removing said second resist pattern by means of ashing with an oxygen-containing gas;removing said low-carbon-concentration film by etch back to form an interconnection trench that includes a via hole;and filling up said interconnection trench with a barrier metal and an interconnection material, and thereby forming a second interconnection.